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Rational design of super-alkalis and their role in CO2 activation

机译:合理设计super-alkalis及其作用二氧化碳活化

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摘要

Super-alkalis are clusters of atoms. With ionization potentials smaller than those of the alkali atoms, they are playing an increasing role in chemistry as highlighted by recent applications in solar cells as well as in Li-ion batteries. For the past 40 years superalkalis were designed using inorganic elements with the sp orbital character. Here, we show that a large class of superalkalis composed of only simple metal atoms, transition metal complexes as well as organic molecules can be designed by making use of electron counting rules beyond the octet rule. Examples include Al-3(+), Mn(B3N3H6)(2)(+), B9C3H12+, and C5NH6+ which obey the jellium shell closure rule, the 18-electron rule, the Wade-Mingos rule, and Huckel's aromatic rule, respectively. We further show that the ability of superalkalis to transfer an electron easily can be used to activate a CO2 molecule by transforming it from a linear to a bent structure. These results, based on density functional theory with generalized gradient approximation for exchange-correlation potential, open the door to a new class of catalysts for CO2 activation.
机译:Super-alkalis是由原子组成的。电离势比小碱原子,它们发挥着越来越大的作用在最近的化学也突出了应用于太阳能电池以及锂离子电池。设计使用无机元素sp轨道性格。组成的一类superalkalis只简单金属原子,过渡金属配合物由于有机分子可以通过设计的使用电子计数规则超出了八隅体规则。B9C3H12 +, C5NH6 +遵守jellium壳关闭规则,18-electron规则,Wade-Mingos法则,休克尔芳香规则,分别。superalkalis转移电子很容易被用来激活一个二氧化碳分子让它从一个线性弯曲结构。功能理论与广义梯度近似exchange-correlation潜力,开门的新类催化剂对二氧化碳激活。

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